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首页> 外文期刊>Journal of marine science and technology >Prediction of steel plate deformation due to triangle heating using the inherent strain method
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Prediction of steel plate deformation due to triangle heating using the inherent strain method

机译:使用固有应变方法预测由于三角加热引起的钢板变形

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In a shipyard, line heating and triangle heating are two major processes carried out by skilled workers to form curved plates in various shapes under various heating conditions. There have been many studies on line heating, but triangle heating has rarely been studied owing to its complicated heating process with irregular multiheating paths and highly concentrated heat input. Triangle heating is the most labor-intensive job. Hence, it is essential for most shipyards to study the automation, as well as the improvement, of the triangle heating process in order to increase hull-forming productivity. In this study, a pioneering attempt to simulate triangle heating was made. A circular disk-spring model is proposed as an analysis model for the elastoplastic procedure of triangle heating, and the inherent strain method is also used to analyze the deformation of plates. The results of the simulation were compared with those of experiments and showed good agreement. It is shown that the present approach and the model used in this study are effective and efficient for simulating triangle heating for the steel plate forming process in shipbuilding.
机译:在造船厂中,线加热和三角加热是技术人员执行的两个主要过程,以在各种加热条件下形成各种形状的弯曲板。关于线加热的研究很多,但是由于三角加热过程复杂,不规则的多重加热路径和高度集中的热量输入,因此对三角加热的研究很少。三角加热是最费力的工作。因此,对于大多数造船厂来说,研究三角加热过程的自动化以及改进是必不可少的,以提高船体成形生产率。在这项研究中,进行了模拟三角形加热的开创性尝试。提出了圆盘弹簧模型作为三角加热弹塑性过程的分析模型,并采用固有应变方法来分析板的变形。仿真结果与实验结果进行比较,吻合良好。结果表明,该方法和本研究中使用的模型对于模拟造船中钢板成形过程中的三角形加热是有效的。

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